Pai-Yen Chen

Pai-Yen Chen

University of Illinois at Chicago

H-index: 49

North America-United States

About Pai-Yen Chen

Pai-Yen Chen, With an exceptional h-index of 49 and a recent h-index of 37 (since 2020), a distinguished researcher at University of Illinois at Chicago, specializes in the field of Applied Electromagnetics, Wireless Sensors, Antennas, Metamaterials, Nanophotonics.

His recent articles reflect a diverse array of research interests and contributions to the field:

A Compact, Batteryless and Chipless Intermodulation Sensor for Wireless Crack Detection

Inkjet-printed invisible antenna facilitates next-generation wireless communication

Metamaterial-Enabled Ultrawideband mmWave Antenna-in-Package Using Heterogeneously-Integrated Silicon IPD and HDI-PCB for B5G/6G Applications

Substrate Integrated Impedance Surface and Their Applications in Waveguide and Antenna Technologies

Materials, Designs, and Implementations of Wearable Antennas and Circuits for Biomedical Applications: A Review

Multimodal Wireless Wound Sensors via Higher-Order Parity-Time Symmetry

Ultrasound Transducer Made of Nanoporous PVDF for Underwater Communications

Food Quality Monitoring Using A Low-Profile Multiplexed Harmonic Sensor

Pai-Yen Chen Information

University

Position

Associate Professor Electrical and Computer Engineerin

Citations(all)

8905

Citations(since 2020)

5459

Cited By

5832

hIndex(all)

49

hIndex(since 2020)

37

i10Index(all)

114

i10Index(since 2020)

102

Email

University Profile Page

Google Scholar

Pai-Yen Chen Skills & Research Interests

Applied Electromagnetics

Wireless Sensors

Antennas

Metamaterials

Nanophotonics

Top articles of Pai-Yen Chen

A Compact, Batteryless and Chipless Intermodulation Sensor for Wireless Crack Detection

IEEE Sensors Journal

2024/2/27

Inkjet-printed invisible antenna facilitates next-generation wireless communication

Device

2024/2/16

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

Metamaterial-Enabled Ultrawideband mmWave Antenna-in-Package Using Heterogeneously-Integrated Silicon IPD and HDI-PCB for B5G/6G Applications

IEEE Journal on Emerging and Selected Topics in Circuits and Systems

2024/1/24

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

Chung-Tse Michael Wu
Chung-Tse Michael Wu

H-Index: 13

Substrate Integrated Impedance Surface and Their Applications in Waveguide and Antenna Technologies

2024/1/9

Materials, Designs, and Implementations of Wearable Antennas and Circuits for Biomedical Applications: A Review

2023/12/22

Multimodal Wireless Wound Sensors via Higher-Order Parity-Time Symmetry

IEEE Sensors Journal

2023/11/21

Ultrasound Transducer Made of Nanoporous PVDF for Underwater Communications

2023/10/29

Rong Fu
Rong Fu

H-Index: 9

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

Food Quality Monitoring Using A Low-Profile Multiplexed Harmonic Sensor

2023/10/29

Zhilu Ye
Zhilu Ye

H-Index: 4

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

A low-cost wide-angle coverage rectennas for energy harvesting applications

2023/10/9

Danilo Erricolo
Danilo Erricolo

H-Index: 15

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

Multimodal Wearable Sensing Systems based on Higher-Order Parity-Time Symmetry

2023/10/9

Microwave bone fracture diagnosis using deep neural network

Scientific Reports

2023/10/7

Microwave Diagnosis of Bone Fractures: an Artificial Intelligence-Based Approach

2023/9/19

Electromagnetically unclonable functions generated by non-Hermitian absorber-emitter

Science Advances

2023/9/8

Wave propagation, bi-directional reflectionless, and coherent perfect absorption-lasing in finite periodic PT-symmetric photonic systems

Nanophotonics

2023/7/20

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

Real-time wireless ecg-derived respiration rate estimation using an autoencoder with a dct layer

2023/6/4

Review on Recent Advances and Applications of Passive Harmonic RFID Systems

2023/5/17

Scattering of waves in finite periodic parity-time symmetric waveguide networks

2023/5/7

Pai-Yen Chen
Pai-Yen Chen

H-Index: 33

A generative deep learning approach for shape recognition of arbitrary objects from phaseless acoustic scattering data

Advanced Intelligent Systems

2023/5

Sound Waveguiding by Spinning: An Avenue toward Unidirectional Acoustic Spinning Fibers

Physical Review Applied

2023/4/26

Recent Advances in Nanomaterials Used for Wearable Electronics

2023/3/5

See List of Professors in Pai-Yen Chen University(University of Illinois at Chicago)

Co-Authors

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